Abstract
The bacterial pathogenPseudomonas aeruginosaactivates expression of many virulence genes in a cell density-dependent manner by using an intricate quorum-sensing (QS) network. QS inP. aeruginosainvolves two acyl-homoserine-lactone circuits, LasI-LasR and RhlI-RhlR. LasI-LasR is required to activate many genes including those coding for RhlI-RhlR.P. aeruginosacauses chronic infections in the lungs of people with cystic fibrosis (CF). In these infections, LasR mutants are common, butrhlR-rhlIexpression has escaped LasR regulation in many CF isolates. To better understand the evolutionary trajectory ofP. aeruginosaQS in chronic infections, we grew LasR mutants of the well-studiedP. aeruginosastrain, PAO1, in conditions that recapitulate an environment where QS signal synthesis by other bacteria might still occur. When QS is required for growth, addition of the RhlI product butyryl-homoserine lactone (C4-HSL), or bacteria that produce C4-HSL, to LasR mutants results in the rapid emergence of a population with a LasR-independent RhlI-RhlR QS system. These evolved populations exhibit subsequent growth without added C4-HSL. The variants that emerge have mutations inmexT, which codes for a transcription factor that controls expression of multiple genes. LasR-MexT mutants have a competitive advantage over both the parent LasR mutant and a LasR-MexT-RhlR mutant. Our findings suggest a plausible evolutionary trajectory for QS inP. aeruginosaCF infections where LasR mutants arise during infection, but because these mutants are surrounded by C4-HSL–producingP. aeruginosa,variants rewired to have a LasR-independent RhlIR system quickly emerge.
Funder
HHS | NIH | National Institute of General Medical Sciences
HHS | NIH | National Institute of Diabetes and Digestive and Kidney Diseases
Cystic Fibrosis Foundation
Doris Duke Charitable Foundation
Burroughs Wellcome Fund
Publisher
Proceedings of the National Academy of Sciences
Cited by
210 articles.
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